US20220277679A1 - Electronic display board system with modified ethernet network for a plurality of display units - Google Patents

Electronic display board system with modified ethernet network for a plurality of display units Download PDF

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US20220277679A1
US20220277679A1 US17/635,362 US202017635362A US2022277679A1 US 20220277679 A1 US20220277679 A1 US 20220277679A1 US 202017635362 A US202017635362 A US 202017635362A US 2022277679 A1 US2022277679 A1 US 2022277679A1
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Jeong Jae LEE
Jeong Yong Lee
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Asone Co Ltd
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Asone Co Ltd
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/04Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of a single character by selection from a plurality of characters, or by composing the character by combination of individual elements, e.g. segments using a combination of such display devices for composing words, rows or the like, in a frame with fixed character positions
    • G09G3/06Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of a single character by selection from a plurality of characters, or by composing the character by combination of individual elements, e.g. segments using a combination of such display devices for composing words, rows or the like, in a frame with fixed character positions using controlled light sources
    • G09G3/12Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of a single character by selection from a plurality of characters, or by composing the character by combination of individual elements, e.g. segments using a combination of such display devices for composing words, rows or the like, in a frame with fixed character positions using controlled light sources using electroluminescent elements
    • G09G3/14Semiconductor devices, e.g. diodes
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • G06F3/1423Digital output to display device ; Cooperation and interconnection of the display device with other functional units controlling a plurality of local displays, e.g. CRT and flat panel display
    • G06F3/1446Digital output to display device ; Cooperation and interconnection of the display device with other functional units controlling a plurality of local displays, e.g. CRT and flat panel display display composed of modules, e.g. video walls
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • G09F9/30Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
    • G09F9/33Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements being semiconductor devices, e.g. diodes
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
    • G09G3/22Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters using controlled light sources
    • G09G3/30Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters using controlled light sources using electroluminescent panels
    • G09G3/32Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters using controlled light sources using electroluminescent panels semiconductive, e.g. using light-emitting diodes [LED]
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • G06F3/1423Digital output to display device ; Cooperation and interconnection of the display device with other functional units controlling a plurality of local displays, e.g. CRT and flat panel display
    • G06F3/1431Digital output to display device ; Cooperation and interconnection of the display device with other functional units controlling a plurality of local displays, e.g. CRT and flat panel display using a single graphics controller
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2300/00Aspects of the constitution of display devices
    • G09G2300/02Composition of display devices
    • G09G2300/026Video wall, i.e. juxtaposition of a plurality of screens to create a display screen of bigger dimensions
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2330/00Aspects of power supply; Aspects of display protection and defect management
    • G09G2330/12Test circuits or failure detection circuits included in a display system, as permanent part thereof
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2370/00Aspects of data communication
    • G09G2370/02Networking aspects
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2370/00Aspects of data communication
    • G09G2370/02Networking aspects
    • G09G2370/022Centralised management of display operation, e.g. in a server instead of locally
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2370/00Aspects of data communication
    • G09G2370/10Use of a protocol of communication by packets in interfaces along the display data pipeline

Definitions

  • the present invention relates to an electronic display board system. More specifically, the present invention relates to an electronic display board system having a plurality of display units connected by a modified Ethernet network to transmit data.
  • large-sized electronic display boards installed in places such as auditoriums, gyms, churches, etc. are implemented by connecting a plurality of display units with each other as a mosaic because it is impossible to manufacture the board in a single large panel or it incurs high costs.
  • For connecting a plurality of display units with each other to form such a large-sized electronic display board there are ways of connecting the display units in series or in parallel.
  • Korean Patent No. 10-1028529 discloses an error processing system of an electronic display board which connects many electronic display boards in parallel to restore only LED modules with detected defects.
  • Korean Patent No. 10-1898172 discloses an electronic display board system configured to connect a main controller for controlling the overall electronic display board system with each of display units in series, with two image signal streams which are transmitted by two circuits, respectively. This way of transmission has a disadvantage of increasing circuits to transmit data.
  • Korean Patent No. 10-1548351 discloses an electronic display board system configured to connect a main control device and local control devices in series by an optical cable or a coaxial cable capable of multiplex transmission.
  • various signals are divided based on time at a high rate for data transmission, but multiple low voltage differential signaling (LVDS) or serial digital interface (SDI) is to be applied for signal transmission, which requires considerable costs for implementation.
  • LVDS low voltage differential signaling
  • SDI serial digital interface
  • the present inventors suggest an electronic display board system which connects a main controller and each of display units which form the electronic display board by an Ethernet network using a cascading method.
  • the electronic display board system with a modified Ethernet network comprises a main controller 1 provided with a main Ethernet switch 10 comprising a first main port 101 and a second main port 102 ; and first to Nth display units D 1 , D 2 , . . . , D N (N is an integer of 2 or more) sequentially connected with each other by an Ethernet network to receive image data transmitted from the main controller 1 to output the data on a display module 21 or transmit the data to a neighboring display unit or the main controller 1 , wherein the first to Nth display units D 1 , D 2 , . . .
  • D N each comprise a first sub-port 201 and a second sub-port 202
  • the first sub-port 201 receives a first image data transmitted from the second main port 102 to transmit the data in a forward direction
  • the second sub-port 202 receives a second image data transmitted from the first main port 101 to transmit the data in a reverse direction.
  • the first main port 101 may be connected with the second sub-port 202 of the first display unit D 1 by a second main circuit MC 2
  • the second main port 102 may be connected with the first sub-port 201 of the Nth display unit D N by a first main circuit MC 1 .
  • the first to Nth display units D 1 , D 2 , . . . , D N are sequentially connected by first to N-1th sub-circuits SC 1 , SC 2 , . . . , SC N-1 , respectively.
  • the first and second main circuits MC 1 , MC 2 and the first to N-1th sub-circuits SC 1 , SC 2 , . . . , SC N-1 are all UTP cables.
  • the method of displaying an image of an electronic display board system with a modified Ethernet network comprises the steps of setting a predetermined transmission rate (S 11 ); setting bi-directional transmission in a full-duplex mode (S 12 ); when the transmission rate of a circuit changes or when data transmission in the full-duplex mode is interrupted, undergoing step S 11 again to set the transmission rate and mode (S 13 ); confirming whether an abnormality occurs in the connection state of a circuit (S 14 ); when no abnormality information is confirmed in the connection state of the circuit, outputting the image on a display module (S 15 ); when abnormality information is confirmed in the connection state of the circuit, determining whether a number of occurrences exceeds a predetermined number of occurrences (S 16 ); and when the number of occurrences exceeds the predetermined number of occurrences, transmitting the abnormality information to a main controller 1 for the main controller 1 to control to output a first image data and a second image data on corresponding display units (S 17 ).
  • the present invention can configure an electronic display board system allowing a main controller and sub-controllers included in a plurality of display units to transmit data using a modified Ethernet network, thereby lowering installation costs. Also, the present invention can output an image on an electronic display board normally even if a problem occurs in a circuit for transmitting data in the electronic display board system.
  • the present invention uses a modified Ethernet network, thereby implementing the system with lower costs, and although the present invention uses an Ethernet communication circuit, it can specify the circuit in image transmission by applying an independent protocol without following typical Ethernet communication protocols or TCP/IP protocols.
  • FIG. 1 is a schematic block diagram illustrating the electronic display board system according to the present invention
  • FIG. 2 is a block diagram illustrating the main controller of the electronic display board system according to the present invention.
  • FIG. 3 is a block diagram illustrating the constitution of the display unit of the electronic display board system according to the present invention.
  • FIG. 4 is a block diagram illustrating the connection state between the main controller and the plurality of display units of the electronic display board system according to the present invention
  • FIG. 5 is a block diagram illustrating an example of the connection state between the main controller and 16 display units of the electronic display board system according to the present invention.
  • FIG. 6 is a block diagram illustrating the process for driving the electronic display board system according to the present invention.
  • FIG. 1 is a schematic block diagram illustrating an electronic display board system 100 according to the present invention. As illustrated in FIG. 1 , the electronic display board system 100 according to the present invention comprises a main controller 1 and a display 2 .
  • the main controller 1 controls to output an image received from outside on the display 2 .
  • the display 2 includes a plurality of display units D 1 , D 2 , . . . , D N .
  • FIG. 1 illustrates 16 display units (D 1 to D 16 ) as an example.
  • the display units are sequentially connected with each other by an Ethernet network.
  • the main controller 1 and the display 2 are also connected by an Ethernet network.
  • the main controller 1 and the first display unit D 1 are connected by a first main circuit MC 1
  • the main controller 1 and the last display unit D N , sixteenth display unit D 16 in FIG. 1 are connected by a second main circuit MC 2 .
  • the first and second main circuits MC 1 , MC 2 are all unshielded twisted pair (UTP) cables.
  • UTP unshielded twisted pair
  • FIG. 2 is a block diagram illustrating the main controller 1 of the electronic display board system 100 according to the present invention.
  • the main controller 1 of the present invention includes an Ethernet switch 10 , an image input port 11 , an image input controller 12 , a central processing device 13 , a memory controller 14 and a memory 15 .
  • the Ethernet switch 10 comprises a first main port 101 and a second main port 102 for connection with the display 2 .
  • the first display unit D 1 of the display 2 is connected with the second main port 102 of the main controller 1 by a first main circuit MC 1
  • the Nth display unit D N is connected with the first main port 101 of the main controller 1 by a second main circuit MC 2 .
  • the first and second main circuits MC 1 , MC 2 support bi-directional full-duplex data transmission.
  • the image input port 11 a port receiving, from outside, image data to be output on the display 2 , may preferably be HDMI or DVI.
  • the image input controller 12 controls to store in the memory 15 image data input from the image input port 11 which is converted to a data format for transmission according to the instructions of the central processing device 13 along with information data necessary for data transmission or image output, determination on circuit abnormality, etc.
  • the memory controller 14 controls to transmit the image and information data stored in the memory 15 to the display 2 through the first and second main ports 101 , 102 of the Ethernet switch 10 .
  • the first and second main ports 101 , 102 of the Ethernet switch 10 of the main controller 1 of the present invention support bi-directional data transmission in the full-duplex mode.
  • the data transmitted to the first main port 101 or the second main port 102 can be stored in the memory 15 through the memory controller 14 , and the memory controller 14 can process information data adding necessary information to the received data to retransmit the data according to the central processing device 13 .
  • the first main port 101 of the main Ethernet switch 10 is sequentially connected with a first main Ethernet transceiver 103 and a first main buffer 105
  • the second main port 102 is sequentially connected with a second main Ethernet transceiver 104 and a second main buffer 106
  • a main Ethernet controller 107 is connected with each of the first main buffer 105 and the second main buffer 106 .
  • the main Ethernet controller 107 transmits the image and information data to be transmitted through the memory controller 14 to outside through the first main port 101 or the second main port 102 according to the instructions of the central processing device 13 .
  • the image and information data to be transmitted to outside through the first main port 101 is temporarily stored in the first main buffer 105 and transmitted through the first main port 101 by the first main Ethernet transceiver 103 .
  • the image and information data to be transmitted through the second main port 102 is temporarily stored in the second main buffer 106 and transmitted through the second main port 102 by the second main Ethernet transceiver 104 .
  • the main Ethernet controller 107 stores the image and information data received through the first main port 101 or the second main port 102 in the memory 15 by the memory controller 14 or transmits the data to outside again through the second main port 102 or the first main port 101 .
  • the image and information data received from outside through the first main port 101 is temporarily stored in the first main buffer 105 by the first main Ethernet transceiver 103 and processed, and the image and information data received through the second main port 102 is temporarily stored in the second main buffer 106 by the second main Ethernet transceiver 104 to be stored or re-processed for transmission.
  • FIG. 3 is a block diagram illustrating the constitution of the display unit D N of the display 2 of the electronic display board system 100 according to the present invention. As illustrated in FIG. 3 , each display unit D N of the plurality of display units has the same constitution, and each display unit D N comprises a sub-controller 20 and a display module 21 .
  • the sub-controller 20 comprises an Ethernet switch 200 comprising a first sub-port 201 and a second sub-port 202 for an Ethernet network, a central processing device 210 , an image control device 220 , a display driver 230 , a memory controller 240 and a memory 250 .
  • the display module 21 is driven by the display driver 230 , and outputs image data on the display screen.
  • the display module is an LED module, and may be other displays such as OLED, LCD, etc., than LED.
  • the image data transmitted to the first sub-port 201 of the display unit D N is temporarily stored in a first sub-buffer 206 through a first sub-Ethernet transceiver 203 .
  • the image data transmitted to the second sub-port 202 is temporarily stored in a second sub-buffer 207 through a second sub-Ethernet transceiver 204 .
  • a sub-Ethernet controller 205 controls to transmit the image data to be output on the corresponding display unit D N among the received image data to the image control device 220 and store the data in the memory 250 through the memory controller 240 according to the instructions of the central processing device 210 .
  • the stored image data is recalled by the display driver 230 to be output on the display module 21 .
  • the image data that does not need to be output on the corresponding display unit D N is transmitted to outside through the first sub-port 201 or the second sub-port 202 .
  • the Ethernet switch 200 for data transmission of the display unit D N is operated by the sub-Ethernet controller 205 according to the instructions of the central processing device 210 .
  • the sub-Ethernet controller 205 controls to temporarily store the image data received through the first sub-port 201 in the first sub-buffer 206 through the first sub-Ethernet transceiver 203 .
  • the sub-Ethernet controller 205 controls to store in the memory 250 the image data to be output on the display module 21 among the image data stored in the first sub-buffer 206 and transmit the other image data to outside through the second sub-port 202 by the second sub-Ethernet transceiver 204 , according to the instructions of the central processing device 210 .
  • the sub-Ethernet controller 205 controls to store in the memory 250 the image data to be output on the display module 21 among the image data received through the second sub-port 202 and transmit the other image data to outside through the first sub-port 201 by the first sub-Ethernet transceiver 203 , according to the instructions of the central processing device 210 .
  • FIG. 4 is a block diagram illustrating the connection state between the main controller 1 and the plurality of display units D 1 , D 2 , . . . , D N of the electronic display board system 100 according to the present invention.
  • the second main port 102 of the Ethernet switch 10 of the main controller 1 is connected with a port of the Ethernet switch of the first display unit D 1 by the first main circuit MC 1 .
  • the other port of the Ethernet switch of the first display unit D 1 is connected with a port of the Ethernet switch of the second display unit D 2 by the first sub-circuit SC 1 .
  • the other port of the Ethernet switch of the second display unit D 2 is connected with a port of the Ethernet switch of the third display unit D 3 by the second sub-circuit SC 2 .
  • the other port of the Ethernet switch of the Nth display unit D N is connected with the first main port 101 of the Ethernet switch of the main controller 1 by the second main circuit MC 2 .
  • the first and second main circuits MC 1 , MC 2 and the first to N-1th sub-circuits SC 1 , SC 2 , . . . , SC N-1 are all circuits capable of Ethernet communication, preferably UTP cables.
  • N is an integer of 2 or more.
  • FIG. 5 is a block diagram illustrating an example of the connection state between the main controller 1 and 16 display units D 1 , D 2 , . . . , D 16 of the electronic display board system 100 according to the present invention.
  • a process for transmitting image data of the electronic display board system 100 of the present invention will be described as follows.
  • the first main port 101 and the second main port 102 of the Ethernet switch 10 of the main controller 1 are an output port and also an input port.
  • the first sub-port and the second sub-port of each of the first to sixteenth display units D 1 , D 2 , . . . , D 16 are an output port and also an input port.
  • the Ethernet switch 10 of the main controller 1 is described as having two ports, but may have more ports than two ports to drive other electronic display boards simultaneously.
  • the Ethernet switch 10 may further comprise a third port and a fourth port to display an image on a plurality of display units separately.
  • the main controller 1 controls to transmit the same image data through both the first main circuit MC 1 and the second main circuit MC 2 .
  • the image data transmitted from the second main port 102 through the first main circuit MC 1 is referred to as a first image data and the image data transmitted through the second main circuit MC 2 is referred to as a second image data
  • the first image data passes through the second main port 102 of the main controller 1 , the first display unit D 1 , the second display unit D 2 , . . . , the sixteenth display unit D 16 , to be transmitted back to the first main port 101 of the main controller 1 through the second main circuit MC 2 .
  • this transmission direction is referred to as forward direction
  • the second image data is transmitted in the reverse direction.
  • the second image data is transmitted from the first main port 101 of the Ethernet switch 10 of the main controller 1 through the second main circuit MC 2 and passes through the sixteenth display unit D 16 , the fifteenth display unit D 15 , . . . , the first display unit D 1 , to be transmitted back to the second main port 102 of the main controller 1 through the first main circuit MC 1 .
  • the two identical image data, first and second image data, is transmitted in order to output the image on the display module normally even when a transmission error occurs in any one of the main circuits and sub-circuits.
  • first image is designated as main image
  • second image is designated as backup image
  • all the display units D 1 , D 2 , . . . , D 16 output the first image on the display module and simply transmit the second image without outputting.
  • the main controller 1 controls to output the first image data only on the first display unit D 1 to the seventh display unit D 7 and output the second image data on the eighth display unit D 8 to the sixteenth display unit D 16 .
  • the first image data and the second image data are synchronized with each other to be output on the display module, and thus the image can be normally output on the whole electronic display board system 100 despite the error of the seventh sub-circuit SC 7 .
  • FIG. 6 is a block diagram illustrating the process for driving the electronic display board system 100 according to the present invention.
  • a transmission rate is set for the Ethernet transceiver.
  • the transmission rate is set to a value predetermined by the main controller 1 , and the sub-controllers 20 set a value identical to the value decided by the main controller 1 .
  • Typical Ethernet transceivers are set for common Internet users to support the transmission rates of 10, 100, 1000 Mbps.
  • the present invention configures a modified Ethernet network suitable for image transmission and employs the network for data transmission. Accordingly, if the transmission rate changes, the image data may not be transmitted smoothly, which results in a problem such as low resolution. Therefore, it is necessary to set a single value for transmission rate. For example, the transmission rate is to be set at 1000 Mbps for all circuits.
  • step S 12 all the Ethernet transceivers are set to bi-directional transmission in a full-duplex mode.
  • the order of step S 12 and step S 11 may be switched.
  • step S 13 when the transmission rate of a circuit changes or when an interruption which causes a recoverable problem for data transmission in the full-duplex mode occurs, step S 11 is undergone again to set the transmission rate and mode.
  • step S 14 whether an abnormality occurs in the connection state of a circuit is confirmed.
  • the image is output on a display module in step S 15 .
  • step S 16 is undergone to determine whether a number of occurrences exceeds a predetermined number of occurrences. For example, when an error occurs in the seventh sub-circuit SC 7 with the number of occurrences set at three times, step S 11 is repeated until the third occurrence.
  • step S 17 the abnormality information is transmitted to the main controller 1 for the main controller 1 to take a measure.
  • the main controller 1 controls the sub-controllers 20 to receive, select and output the main image in the forward direction towards the circuits in which the error occurs and the backup image in the reverse direction, respectively.
  • the data transmitted in the present invention is separated into image data and information data and transmitted using time division method.
  • the image data is always transmitted first, and then the information data is transmitted sequentially following transmission of the image data. By doing so, even if an abnormality occurs in data transmission, the damage of the image data can be minimized because the image data is transmitted first.

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Multimedia (AREA)
  • Human Computer Interaction (AREA)
  • General Engineering & Computer Science (AREA)
  • Control Of Indicators Other Than Cathode Ray Tubes (AREA)

Abstract

The electronic display board system with a modified Ethernet network according to the present invention comprises a main controller 1 provided with a main Ethernet switch 10 comprising a first main port 101 and a second main port 102; and first to Nth display units D1, D2, . . . , DN (N is an integer of 2 or more) sequentially connected with each other by an Ethernet network to receive image data transmitted from the main controller 1 to output the data on a display module 21 or transmit the data to a neighboring display unit or the main controller 1, wherein the first to Nth display units D1, D2, . . . , DN each comprise a first sub-port 201 and a second sub-port 202 to receive a first image data transmitted from the second main port 102 to transmit the data in a forward direction and to receive a second image data transmitted from the first main port 101 to transmit the data in a reverse direction.

Description

    TECHNICAL FIELD
  • The present invention relates to an electronic display board system. More specifically, the present invention relates to an electronic display board system having a plurality of display units connected by a modified Ethernet network to transmit data.
  • BACKGROUND ART
  • In general, large-sized electronic display boards installed in places such as auditoriums, gyms, churches, etc., are implemented by connecting a plurality of display units with each other as a mosaic because it is impossible to manufacture the board in a single large panel or it incurs high costs. For connecting a plurality of display units with each other to form such a large-sized electronic display board, there are ways of connecting the display units in series or in parallel.
  • The way of simply connecting many display units in series has a disadvantage that if a display unit is broken, other display units that are not broken cannot be used. In order to overcome the disadvantage, Korean Patent No. 10-1028529 discloses an error processing system of an electronic display board which connects many electronic display boards in parallel to restore only LED modules with detected defects.
  • Korean Patent No. 10-1898172 discloses an electronic display board system configured to connect a main controller for controlling the overall electronic display board system with each of display units in series, with two image signal streams which are transmitted by two circuits, respectively. This way of transmission has a disadvantage of increasing circuits to transmit data.
  • Korean Patent No. 10-1548351 discloses an electronic display board system configured to connect a main control device and local control devices in series by an optical cable or a coaxial cable capable of multiplex transmission. Here, various signals are divided based on time at a high rate for data transmission, but multiple low voltage differential signaling (LVDS) or serial digital interface (SDI) is to be applied for signal transmission, which requires considerable costs for implementation.
  • In order to solve the above-mentioned problems, the present inventors suggest an electronic display board system which connects a main controller and each of display units which form the electronic display board by an Ethernet network using a cascading method.
  • DISCLOSURE OF INVENTION Technical Problem
  • It is an object of the present invention to provide an electronic display board system allowing a main controller and sub-controllers included in a plurality of display units to transmit data using a modified Ethernet network.
  • It is another object of the present invention to provide an electronic display board system capable of outputting an image on an electronic display board normally even if a problem occurs in a circuit.
  • The objects above and other objects inferred therein can be easily achieved by the present invention explained below.
  • Solution to Problem
  • The electronic display board system with a modified Ethernet network according to the present invention comprises a main controller 1 provided with a main Ethernet switch 10 comprising a first main port 101 and a second main port 102; and first to Nth display units D1, D2, . . . , DN (N is an integer of 2 or more) sequentially connected with each other by an Ethernet network to receive image data transmitted from the main controller 1 to output the data on a display module 21 or transmit the data to a neighboring display unit or the main controller 1, wherein the first to Nth display units D1, D2, . . . , DN each comprise a first sub-port 201 and a second sub-port 202, the first sub-port 201 receives a first image data transmitted from the second main port 102 to transmit the data in a forward direction, and the second sub-port 202 receives a second image data transmitted from the first main port 101 to transmit the data in a reverse direction.
  • In the present invention, the first main port 101 may be connected with the second sub-port 202 of the first display unit D1 by a second main circuit MC2, and the second main port 102 may be connected with the first sub-port 201 of the Nth display unit DN by a first main circuit MC1.
  • In the present invention, preferably, the first to Nth display units D1, D2, . . . , DN are sequentially connected by first to N-1th sub-circuits SC1, SC2, . . . , SCN-1, respectively.
  • In the present invention, preferably, the first and second main circuits MC1, MC2 and the first to N-1th sub-circuits SC1, SC2, . . . , SCN-1 are all UTP cables.
  • The method of displaying an image of an electronic display board system with a modified Ethernet network according to the present invention comprises the steps of setting a predetermined transmission rate (S11); setting bi-directional transmission in a full-duplex mode (S12); when the transmission rate of a circuit changes or when data transmission in the full-duplex mode is interrupted, undergoing step S11 again to set the transmission rate and mode (S13); confirming whether an abnormality occurs in the connection state of a circuit (S14); when no abnormality information is confirmed in the connection state of the circuit, outputting the image on a display module (S15); when abnormality information is confirmed in the connection state of the circuit, determining whether a number of occurrences exceeds a predetermined number of occurrences (S16); and when the number of occurrences exceeds the predetermined number of occurrences, transmitting the abnormality information to a main controller 1 for the main controller 1 to control to output a first image data and a second image data on corresponding display units (S17).
  • Advantageous Effects of Invention
  • The present invention can configure an electronic display board system allowing a main controller and sub-controllers included in a plurality of display units to transmit data using a modified Ethernet network, thereby lowering installation costs. Also, the present invention can output an image on an electronic display board normally even if a problem occurs in a circuit for transmitting data in the electronic display board system. The present invention uses a modified Ethernet network, thereby implementing the system with lower costs, and although the present invention uses an Ethernet communication circuit, it can specify the circuit in image transmission by applying an independent protocol without following typical Ethernet communication protocols or TCP/IP protocols.
  • BRIEF DESCRIPTION OF DRAWINGS
  • FIG. 1 is a schematic block diagram illustrating the electronic display board system according to the present invention;
  • FIG. 2 is a block diagram illustrating the main controller of the electronic display board system according to the present invention;
  • FIG. 3 is a block diagram illustrating the constitution of the display unit of the electronic display board system according to the present invention;
  • FIG. 4 is a block diagram illustrating the connection state between the main controller and the plurality of display units of the electronic display board system according to the present invention;
  • FIG. 5 is a block diagram illustrating an example of the connection state between the main controller and 16 display units of the electronic display board system according to the present invention; and
  • FIG. 6 is a block diagram illustrating the process for driving the electronic display board system according to the present invention.
  • Hereinafter, the present invention will be described in detail with reference to the accompanying drawings.
  • MODE FOR THE INVENTION
  • FIG. 1 is a schematic block diagram illustrating an electronic display board system 100 according to the present invention. As illustrated in FIG. 1, the electronic display board system 100 according to the present invention comprises a main controller 1 and a display 2.
  • The main controller 1 controls to output an image received from outside on the display 2. The display 2 includes a plurality of display units D1, D2, . . . , DN. FIG. 1 illustrates 16 display units (D1 to D16) as an example. The display units are sequentially connected with each other by an Ethernet network. The main controller 1 and the display 2 are also connected by an Ethernet network. The main controller 1 and the first display unit D1 are connected by a first main circuit MC1, and the main controller 1 and the last display unit DN, sixteenth display unit D16 in FIG. 1, are connected by a second main circuit MC2. Preferably, the first and second main circuits MC1, MC2 are all unshielded twisted pair (UTP) cables. The detailed matters on the constitution of the main controller 1 and the display 2 and the connection relation therebetween will be described below.
  • FIG. 2 is a block diagram illustrating the main controller 1 of the electronic display board system 100 according to the present invention. With reference to FIG. 2, the main controller 1 of the present invention includes an Ethernet switch 10, an image input port 11, an image input controller 12, a central processing device 13, a memory controller 14 and a memory 15.
  • The Ethernet switch 10 comprises a first main port 101 and a second main port 102 for connection with the display 2. The first display unit D1 of the display 2 is connected with the second main port 102 of the main controller 1 by a first main circuit MC1, and the Nth display unit DN is connected with the first main port 101 of the main controller 1 by a second main circuit MC2. The first and second main circuits MC1, MC2 support bi-directional full-duplex data transmission.
  • The image input port 11, a port receiving, from outside, image data to be output on the display 2, may preferably be HDMI or DVI. The image input controller 12 controls to store in the memory 15 image data input from the image input port 11 which is converted to a data format for transmission according to the instructions of the central processing device 13 along with information data necessary for data transmission or image output, determination on circuit abnormality, etc. The memory controller 14 controls to transmit the image and information data stored in the memory 15 to the display 2 through the first and second main ports 101, 102 of the Ethernet switch 10. [28] The first and second main ports 101, 102 of the Ethernet switch 10 of the main controller 1 of the present invention support bi-directional data transmission in the full-duplex mode. Thus, the data transmitted to the first main port 101 or the second main port 102 can be stored in the memory 15 through the memory controller 14, and the memory controller 14 can process information data adding necessary information to the received data to retransmit the data according to the central processing device 13.
  • The first main port 101 of the main Ethernet switch 10 is sequentially connected with a first main Ethernet transceiver 103 and a first main buffer 105, and the second main port 102 is sequentially connected with a second main Ethernet transceiver 104 and a second main buffer 106. A main Ethernet controller 107 is connected with each of the first main buffer 105 and the second main buffer 106. The main Ethernet controller 107 transmits the image and information data to be transmitted through the memory controller 14 to outside through the first main port 101 or the second main port 102 according to the instructions of the central processing device 13. The image and information data to be transmitted to outside through the first main port 101 is temporarily stored in the first main buffer 105 and transmitted through the first main port 101 by the first main Ethernet transceiver 103. Likewise, the image and information data to be transmitted through the second main port 102 is temporarily stored in the second main buffer 106 and transmitted through the second main port 102 by the second main Ethernet transceiver 104.
  • The main Ethernet controller 107 stores the image and information data received through the first main port 101 or the second main port 102 in the memory 15 by the memory controller 14 or transmits the data to outside again through the second main port 102 or the first main port 101. The image and information data received from outside through the first main port 101 is temporarily stored in the first main buffer 105 by the first main Ethernet transceiver 103 and processed, and the image and information data received through the second main port 102 is temporarily stored in the second main buffer 106 by the second main Ethernet transceiver 104 to be stored or re-processed for transmission.
  • FIG. 3 is a block diagram illustrating the constitution of the display unit DN of the display 2 of the electronic display board system 100 according to the present invention. As illustrated in FIG. 3, each display unit DN of the plurality of display units has the same constitution, and each display unit DN comprises a sub-controller 20 and a display module 21.
  • The sub-controller 20 comprises an Ethernet switch 200 comprising a first sub-port 201 and a second sub-port 202 for an Ethernet network, a central processing device 210, an image control device 220, a display driver 230, a memory controller 240 and a memory 250. The display module 21 is driven by the display driver 230, and outputs image data on the display screen. Preferably, the display module is an LED module, and may be other displays such as OLED, LCD, etc., than LED.
  • The image data transmitted to the first sub-port 201 of the display unit DN is temporarily stored in a first sub-buffer 206 through a first sub-Ethernet transceiver 203. The image data transmitted to the second sub-port 202 is temporarily stored in a second sub-buffer 207 through a second sub-Ethernet transceiver 204. A sub-Ethernet controller 205 controls to transmit the image data to be output on the corresponding display unit DN among the received image data to the image control device 220 and store the data in the memory 250 through the memory controller 240 according to the instructions of the central processing device 210. The stored image data is recalled by the display driver 230 to be output on the display module 21. The image data that does not need to be output on the corresponding display unit DN is transmitted to outside through the first sub-port 201 or the second sub-port 202.
  • The Ethernet switch 200 for data transmission of the display unit DN is operated by the sub-Ethernet controller 205 according to the instructions of the central processing device 210. The sub-Ethernet controller 205 controls to temporarily store the image data received through the first sub-port 201 in the first sub-buffer 206 through the first sub-Ethernet transceiver 203. The sub-Ethernet controller 205 controls to store in the memory 250 the image data to be output on the display module 21 among the image data stored in the first sub-buffer 206 and transmit the other image data to outside through the second sub-port 202 by the second sub-Ethernet transceiver 204, according to the instructions of the central processing device 210. Likewise, the sub-Ethernet controller 205 controls to store in the memory 250 the image data to be output on the display module 21 among the image data received through the second sub-port 202 and transmit the other image data to outside through the first sub-port 201 by the first sub-Ethernet transceiver 203, according to the instructions of the central processing device 210.
  • FIG. 4 is a block diagram illustrating the connection state between the main controller 1 and the plurality of display units D 1 , D2, . . . , DN of the electronic display board system 100 according to the present invention. As illustrated in FIG. 4, the second main port 102 of the Ethernet switch 10 of the main controller 1 is connected with a port of the Ethernet switch of the first display unit D1 by the first main circuit MC1. The other port of the Ethernet switch of the first display unit D1 is connected with a port of the Ethernet switch of the second display unit D2 by the first sub-circuit SC1. Likewise, the other port of the Ethernet switch of the second display unit D2 is connected with a port of the Ethernet switch of the third display unit D3 by the second sub-circuit SC2. In this sequential manner, the other port of the Ethernet switch of the Nth display unit DN is connected with the first main port 101 of the Ethernet switch of the main controller 1 by the second main circuit MC2. The first and second main circuits MC1, MC2 and the first to N-1th sub-circuits SC1, SC2, . . . , SCN-1 are all circuits capable of Ethernet communication, preferably UTP cables. Here, N is an integer of 2 or more.
  • FIG. 5 is a block diagram illustrating an example of the connection state between the main controller 1 and 16 display units D 1 , D2, . . . , D16 of the electronic display board system 100 according to the present invention. With reference to FIG. 5, a process for transmitting image data of the electronic display board system 100 of the present invention will be described as follows.
  • For the main circuits and sub-circuits used herein, cables capable of data transmission according to Ethernet communication protocols are used. Furthermore, bi-directional data communication in a full-duplex mode is possible with one circuit. Thus, for the first main circuit MC1, the first main port 101 and the second main port 102 of the Ethernet switch 10 of the main controller 1 are an output port and also an input port. The first sub-port and the second sub-port of each of the first to sixteenth display units D1, D2, . . . , D16 are an output port and also an input port. Meanwhile, the Ethernet switch 10 of the main controller 1 is described as having two ports, but may have more ports than two ports to drive other electronic display boards simultaneously. For example, the Ethernet switch 10 may further comprise a third port and a fourth port to display an image on a plurality of display units separately.
  • In the present invention, the main controller 1 controls to transmit the same image data through both the first main circuit MC1 and the second main circuit MC2. If the image data transmitted from the second main port 102 through the first main circuit MC1 is referred to as a first image data and the image data transmitted through the second main circuit MC2 is referred to as a second image data, the first image data passes through the second main port 102 of the main controller 1, the first display unit D1, the second display unit D2, . . . , the sixteenth display unit D16, to be transmitted back to the first main port 101 of the main controller 1 through the second main circuit MC2. If this transmission direction is referred to as forward direction, the second image data is transmitted in the reverse direction. The second image data is transmitted from the first main port 101 of the Ethernet switch 10 of the main controller 1 through the second main circuit MC2 and passes through the sixteenth display unit D16, the fifteenth display unit D15, . . . , the first display unit D1, to be transmitted back to the second main port 102 of the main controller 1 through the first main circuit MC1.
  • The two identical image data, first and second image data, is transmitted in order to output the image on the display module normally even when a transmission error occurs in any one of the main circuits and sub-circuits. For example, if the first image is designated as main image and the second image is designated as backup image, all the display units D1, D2, . . . , D16 output the first image on the display module and simply transmit the second image without outputting. While doing this, if an abnormality occurs in, for example, the seventh sub-circuit SC7 and it is impossible to transmit the data, the information data on the error is transmitted to the main controller 1, the main controller 1 controls to output the first image data only on the first display unit D1 to the seventh display unit D7 and output the second image data on the eighth display unit D8 to the sixteenth display unit D16. The first image data and the second image data are synchronized with each other to be output on the display module, and thus the image can be normally output on the whole electronic display board system 100 despite the error of the seventh sub-circuit SC7.
  • FIG. 6 is a block diagram illustrating the process for driving the electronic display board system 100 according to the present invention. With reference to FIG. 6, first, in step S11, a transmission rate is set for the Ethernet transceiver. The transmission rate is set to a value predetermined by the main controller 1, and the sub-controllers 20 set a value identical to the value decided by the main controller 1. Typical Ethernet transceivers are set for common Internet users to support the transmission rates of 10, 100, 1000 Mbps. The present invention configures a modified Ethernet network suitable for image transmission and employs the network for data transmission. Accordingly, if the transmission rate changes, the image data may not be transmitted smoothly, which results in a problem such as low resolution. Therefore, it is necessary to set a single value for transmission rate. For example, the transmission rate is to be set at 1000 Mbps for all circuits.
  • Next, in step S12, all the Ethernet transceivers are set to bi-directional transmission in a full-duplex mode. The order of step S12 and step S11 may be switched.
  • Next, in step S13, when the transmission rate of a circuit changes or when an interruption which causes a recoverable problem for data transmission in the full-duplex mode occurs, step S11 is undergone again to set the transmission rate and mode.
  • Next, in step S14, whether an abnormality occurs in the connection state of a circuit is confirmed. When no abnormality information is confirmed, the image is output on a display module in step S15. When abnormality information is confirmed, step S16 is undergone to determine whether a number of occurrences exceeds a predetermined number of occurrences. For example, when an error occurs in the seventh sub-circuit SC7 with the number of occurrences set at three times, step S11 is repeated until the third occurrence. When the same error occurs four times, in step S17, the abnormality information is transmitted to the main controller 1 for the main controller 1 to take a measure. The main controller 1 controls the sub-controllers 20 to receive, select and output the main image in the forward direction towards the circuits in which the error occurs and the backup image in the reverse direction, respectively.
  • Meanwhile, the data transmitted in the present invention is separated into image data and information data and transmitted using time division method. The image data is always transmitted first, and then the information data is transmitted sequentially following transmission of the image data. By doing so, even if an abnormality occurs in data transmission, the damage of the image data can be minimized because the image data is transmitted first.
  • The detailed description of the present invention described as above simply explains examples for understanding the present invention, but does not intend to limit the scope of the present invention. The scope of the present invention is defined by the accompanying claims. Additionally, it should be construed that the modifications or changes of the present invention fall within the protection scope of the present invention.

Claims (5)

1. An electronic display board system with a modified Ethernet network comprising:
a main controller 1 provided with a main Ethernet switch 10 comprising a first main port 101 and a second main port 102; and
first to Nth display units D1, D2, . . . , DN (N is an integer of 2 or more) sequentially connected with each other by an Ethernet network to receive image data transmitted from the main controller 1 to output the data on a display module 21 or transmit the data to a neighboring display unit or the main controller 1,
wherein the first to Nth display units D 1 , D2, . . . , DN each comprise a first sub-port 201 and a second sub-port 202, the first sub-port 201 receives a first image data transmitted from the second main port 102 to transmit the data in a forward direction, and the second sub-port 202 receives a second image data transmitted from the first main port 101 to transmit the data in a reverse direction.
2. The electronic display board system of claim 1, wherein the first main port 101 is connected with the second sub-port 202 of the first display unit D1 by a second main circuit MC2, and the second main port 102 is connected with the first sub-port 201 of the Nth display unit DN by a first main circuit MC1
3. The electronic display board system of claim 1, wherein the first to Nth display units D1, D2, . . . , DN are sequentially connected by first to N-1th sub-circuits SC1, SC2, . . . , SCN-1, respectively.
4. The electronic display board system of claim 3, wherein the first and second main circuits MC1, MC2 and the first to N-1th sub-circuits SC1, SC2, . . . , SCN-1are all UTP cables.
5. A method of outputting an image of an electronic display board system with a modified network, comprising the steps of:
setting a predetermined transmission rate (S11);
setting bi-directional transmission in a full-duplex mode (S12);
when the transmission rate of a circuit changes or when data transmission in the full-duplex mode is interrupted, undergoing step S11 again to set the transmission rate and mode (S13);
confirming whether an abnormality occurs in the connection state of a circuit (S14);
when no abnormality information is confirmed in the connection state of the circuit, outputting the image on a display module (S15);
when abnormality information is confirmed in the connection state of the circuit, determining whether a number of occurrences exceeds a predetermined number of occurrences (S16); and
when the number of occurrences exceeds the predetermined number of occurrences, transmitting the abnormality information to a main controller 1 for the main controller 1 to control to output a first image data and a second image data on corresponding display units (S17).
US17/635,362 2019-10-31 2020-10-20 Electronic display board system with modified ethernet network for a plurality of display units Pending US20220277679A1 (en)

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